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We have 84 enzymes PhD Projects, Programmes & Scholarships for Self-funded Students

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enzymes PhD Projects, Programmes & Scholarships for Self-funded Students

We have 84 enzymes PhD Projects, Programmes & Scholarships for Self-funded Students

Using chemical-genetics to inhibit and characterise “undruggable” enzymes

The ability to inhibit kinases with small molecule drugs has transformed our understanding of signalling networks. It has allowed us to define the substrates and processes that each kinase controls, and to map how these enzymes cooperate within signalling pathways. Read more

The role of ubiquitin-modifying enzymes in angiogenesis

The School of Molecular & Cellular Biology invites applications from prospective postgraduate researchers who wish to commence study for a PhD in the academic year 2024/25. Read more

Understanding control of genome folding by cohesin

Our basic goal is to understand how chromatin structure influences gene regulation. Chromatin is generally repressive in nature but its structure is manipulated by cells in a regulated way to determine which genes are potentially transcriptionally active and which genes remain repressed in a given cell type. Read more

Novel glycoprotease discovery and characterisation for enhanced detergent performance

In this exciting joint academia-industry project the student will exploit metagenomes and the huge untapped capacity of the human gut microbiota to breakdown glycoconjugates to discover novel protease enzymes that can potentially increase the performance and environmental sustainability of leading P&G automatic dishwashing brands. Read more

Structural insights into genome control by cohesin

Our basic goal is to understand how chromatin structure influences gene regulation. Chromatin is generally repressive in nature but its structure is manipulated by cells in a regulated way to determine which genes are potentially transcriptionally active and which genes remain repressed in a given cell type. Read more

The identification of allosteric inhibitors of high value therapeutic targets

This study will develop a novel approach to identify allosteric inhibitor sites on a wide variety of high-value therapeutic targets, including protein kinases, protein phosphatases and small G-proteins. Read more

Developing novel targeted therapeutic approaches through induced-proximity of proteins

Protein post-translational code is at the heart of protein function and signal transduction in cells. Enzymes catalyse the addition or removal of post-translational modifications (PTM), such as phosphorylation, methylation, acetylation, and ubiquitylation, on proteins. Read more

Discovery and profiling of small-molecule inhibitors of cellular nuclease enzymes

Nuclease enzymes are non-traditional drug targets that attract an increasing amount of interest as potential targets relevant for a variety of therapeutic areas including infection, cancer and bone disease. Read more

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